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首页> 外文期刊>Animal Feed Science and Technology >The effect of expander processing and screen size on nutrient digestibility, growth performance, selected faecal microbial populations and faecal volatile fatty acid concentrations in grower-finisher pigs.
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The effect of expander processing and screen size on nutrient digestibility, growth performance, selected faecal microbial populations and faecal volatile fatty acid concentrations in grower-finisher pigs.

机译:膨化处理和筛分尺寸对生长肥育猪养分消化率,生长性能,选定的粪便微生物种群和粪便挥发性脂肪酸浓度的影响。

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摘要

A 2x2 factorial experiment with grower-finisher pigs was conducted to investigate the effect of screen size and expander processing (yes and no) on digestibility, pig performance, selected faecal microbial populations and faecal volatile fatty acid concentrations. The feed was ground at two levels (using a 3 or 6 mm hammermill screen) to obtain a fine or coarse feed and given to the pigs as either raw or expanded feed. The diets were expander processed at 105 degrees C for 5 s at 35-bar pressure. Fine grinding increased the coefficient of total tract apparent digestibility (CTTAD) of gross energy of the diets (P<0.05) and reduced faecal dry matter concentration (P<0.05). Pigs offered the 3 mm diets had a lower (P<0.05) feed intake (2.47 kg/day versus 2.55 kg/day, S.E.M. 0.029) and a better (P<0.01) feed conversion ratio (2.61 kg/kg versus 2.80 kg/kg, S.E.M. 0.034) than the pigs offered the 6 mm diets. Expander processing had no effect on CTTAD or growth performance. There was a significant interaction (P<0.05) between screen size and expander processing on the faecal Lactobacilli and Enterobacteria population. Coarse grinding increased (P<0.05) the faecal Lactobacilli population and decreased (P<0.05) faecal Enterobacteria population when the diets were not heat treated. However, screen size had no effect on Lactobacilli and Enterobacteria population when the diets were expanded. Coarse grinding increased (P<0.05) the total faecal volatile fatty acid concentration and molar proportions of propionic acid and butyric acid while decreasing (P<0.05) the faecal proportions of acetic acid compared to fine grinding. In conclusion, fine grinding of feed improved feed intake and feed conversion ratio. However, it did increase faecal Enterobacteria populations. Expander processing had no effect on pig performance..
机译:对生长肥育猪进行了2x2析因实验,研究了筛分大小和膨化处理(是和否)对消化率,猪性能,所选粪便微生物种群和粪便挥发性脂肪酸浓度的影响。将饲料分两级(使用3毫米或6毫米锤磨筛)进行粉碎,以得到精细或粗糙的饲料,并以生料或膨化料的形式提供给猪。在35巴压力下,将饲料在105摄氏度下进行膨化处理5 s。精细研磨增加了日粮总能量的总表观消化率(CTTAD)(P <0.05),降低了粪便干物质浓度(P <0.05)。提供3毫米日粮的猪的采食量较低(P <0.05)(2.47千克/天vs 2.55千克/天,SEM 0.029)和更好的(P <0.01)饲料转化率(2.61千克/ kg对2.80千克/ kg,SEM 0.034)比提供6 mm日粮的猪高。膨胀剂加工对CTTAD或生长性能没有影响。粪便乳酸杆菌和肠杆菌种群的筛分大小和扩展处理之间存在显着的相互作用(P <0.05)。当不进行日粮热处理时,粗磨可以增加(P <0.05)粪便乳酸菌的数量,减少(P <0.05)粪便肠杆菌的数量。但是,扩大饮食范围时,筛分大小对乳酸菌和肠杆菌种群没有影响。与精磨相比,粗磨增加了粪便中总挥发性脂肪酸的浓度(P <0.05)以及丙酸和丁酸的摩尔比,而降低了(P <0.05)乙酸的粪便比。总之,饲料的细磨可以提高饲料的采食量和饲料转化率。但是,它确实增加了粪便肠杆菌的数量。膨化机加工对生猪的性能没有影响。

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